...
首页> 外文期刊>Urban Science >Simplified Numerical Model for Analyzing the Effects of the Urban Heat Island upon Low-Rise Buildings by Using a Free-License Thermal Simulation Program
【24h】

Simplified Numerical Model for Analyzing the Effects of the Urban Heat Island upon Low-Rise Buildings by Using a Free-License Thermal Simulation Program

机译:使用自由许可热仿真程序分析城市热岛对低层建筑物效应的简化数值模型

获取原文
   

获取外文期刊封面封底 >>

       

摘要

In this document, the thermal effect of a heat island upon an urban area and its surrounding low-rise buildings is analyzed with the building thermal simulation program EnergyPlus and its EnergyPlus weather files (EPW). By using a top-down approach, a simplified numerical model is developed, which is used to simulate the urban heat island effect, and that deals with the performance of various cooling methods according to the physical, urban, and climatic characteristics of the urban site. The calculated results of outdoor air temperature considering the heat island effect achieve good agreement with the already-published results. Then, different methods of shading and cooling, varying physical values such as urban thermal transmittance, and urban thermal absorption are applied in order to find the most influencing feature upon the indoor temperature drop into a simulation loop. With this, it is found that a maximum average decrease of indoor temperature of 5.1 C can be achieved. Furthermore, carrying out a sensitivity analysis, it is found that the albedo of both building surface and urban layout is the most influencing parameter onto the indoor thermal comfort. With this, it is expected to have a reliable model that helps to understand the urban heat island effect in a simple and cheap manner and in terms of the indoor thermal comfort of its surrounding buildings.
机译:在本文件中,通过建筑热仿真程序EnergyPlus及其EnergyPlus天气文件(EPW)分析了散热岛和其周围的低层建筑物对城区及其周围的低层建筑物的热效应。通过使用自上而下的方法,开发了一种简化的数值模型,用于模拟城市热岛效应,并根据城市遗址的身体,城市和气候特征涉及各种冷却方法的性能。考虑热岛效果的室外空气温度的计算结果与已发表的结果实现了良好的一致性。然后,施加不同的阴影和冷却方法,不同的物理值,例如城市热透射率和城市热吸收,以便在室内温度下降到模拟环上时最大的影响特征。由此,发现可以实现室内温度的最大平均降低5.1℃。此外,进行敏感性分析,发现建筑物表面和城市布局的Albedo是室内热舒适度最大的参数。有了这个,预计有一个可靠的模型,有助于以简单廉价的方式和周围建筑物的室内热舒适性来了解城市热岛的影响。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号